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Bacillus pumilus strain YSPMK11 as plant growth promoter and bicontrol agent against Sclerotinia sclerotiorum

机译:短小芽孢杆菌菌株YSPMK11作为植物生长促进剂和抗菌核盘菌的双控制剂

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摘要

A study was executed in a direction to attenuate Sclerotinia stalk rot (SSR) disease through biocontrol agent and also to enhance crop productivity. Culture filtrate of bacterial strain YSPMK11 inhibited growth of Sclerotinia sclerotiorum in vitro which also exhibited higher plant growth promoting attributes. Interaction studies revealed maximum (81.50%) growth inhibition at 35 °C and pH 7.0 after 72 h incubation period with 15% culture filtrate. Based upon 16S rRNA gene sequence strain, YSPMK11 was identified as Bacillus pumilus. Furthermore, the genome of this isolate was searched for antimicrobial lipopeptide, i.e., ItuD and SrfC genes. The PCR amplification results showed the presence of both these lipopeptide genes in isolate YSPMK11. Iturin A as antifungal compound was identified as major components of fraction through GC/MS. In field experiments, the application of strain YSPMK11 cell suspension (108 CFU/ml) suppressed disease severity by 93% and increased curd yield by 36% which was more that of commercially used fungicide in farmer practices under mid-hills of Himachal Pradesh. Conclusively, our study is first to demonstrate the effect of B. pumilus strain YSPMK11 in suppression of SSR under field conditions and would be employed as an efficient biocontrol agent to replace commercial fungicides in cauliflower cropping system. In addition, the presence of both lipopeptide genes (ItuD and SrfC) and iturin A in this isolate makes him potent strain for biological control application in agriculture.
机译:进行了一项研究,旨在通过生物防治剂减轻菌核菌病(SSR)的病害,并提高作物的生产力。细菌菌株YSPMK11的培养滤液在体外抑制了核盘菌的生长,其还表现出较高的促进植物生长的特性。相互作用研究表明,与15%培养滤液一起孵育72小时后,在35°C和pH 7.0下最大(81.50%)生长抑制作用。基于16S rRNA基因序列菌株,YSPMK11被鉴定为短小芽孢杆菌。此外,在该分离物的基因组中搜索抗菌脂肽,即ItuD和SrfC基因。 PCR扩增结果表明,这两种脂肽基因都存在于分离株YSPMK11中。通过GC / MS将Iturin A作为抗真菌化合物鉴定为馏分的主要成分。在野外试验中,应用菌株YSPMK11细胞悬液(10 8 CFU / ml)可将疾病严重程度降低93%,并将凝乳产量提高36%,这比在农场主实践中商业化杀菌剂要高喜马al尔邦的中山。最终,我们的研究首先证明了短小芽孢杆菌YSPMK11在田间条件下抑制SSR的作用,并将其作为有效的生物防治剂替代花椰菜种植系统中的商业杀菌剂。此外,此分离物中脂肽基因(ItuD和SrfC)和iturin A的存在使他成为有效的菌株,可用于农业的生物防治。

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